Graphene transistors for bioelectronics
arXiv:1302.1418 · doi:10.1109/JPROC.2013.2261031
Abstract
This paper provides an overview on graphene solution-gated field effect transistors (SGFETs) and their applications in bioelectronics. The fabrication and characterization of arrays of graphene SGFETs is presented and discussed with respect to competing technologies. To obtain a better understanding of the working principle of solution-gated transistors, the graphene-electrolyte interface is discussed in detail. The in-vitro biocompatibility of graphene is assessed by primary neuron cultures. Finally, bioelectronic experiments with electrogenic cells are presented, confirming the suitability of graphene to record the electrical activity of cells.
submitted to Proc. IEEE
References in corpus (4)
Cited by in corpus (14)
- Ultrasensitive Field-Effect Biosensors Enabled by the Unique Electronic Properties of Graphene
- Flexible graphene transistors for recording cell action potentials
- Graphene field-effect transistor array with integrated electrolytic gates scaled to 200 mm
- Compact modeling technology for the simulation of integrated circuits based on graphene field-effect transistors
- Detection of DNA and Poly-L-Lysine using CVD Graphene-channel FET Biosensors
- Understanding the Bias Dependence of Low Frequency Noise in Sin-gle Layer Graphene FETs
- Information and Communication Theoretical Understanding and Treatment of Spinal Cord Injuries: State-of-the-art and Research Challenges
- Velocity Saturation effect on Low Frequency Noise in short channel Single Layer Graphene FETs
- Low-frequency noise parameter extraction method for single layer graphene FETs
- In-situ Raman Spectroscopy of the Graphene / Water Interface of a Solution-Gated Field Effect Transistor: Electron-Phonon Coupling and Spectroelectrochemistry
- A platform for analysis of nanoscale liquids with an integrated sensor array based on 2-d material
- Graphene on Silicon Hybrid Field-Effect Transistors
- Bias Dependent Variability of Low Frequency Noise in Single Layer Graphene FETs
- Scalable conformal electronics based on roll-to-roll exfoliated van der Waals semiconductors